Transforming growth factor-β1 (TGF-β1) regulates ATDC5 chondrogenic differentiation and fibronectin isoform expression

F. Han, Christopher S. Adams, Z. Tao, C. J. Williams, R. Zaka, R S. Tuan, P. A. Norton, N. J. Hickok

Research output: Contribution to journalArticlepeer-review

Abstract

Regulated splicing of fibronectin (FN) occurs during the mesenchymal to chondrocyte transition and ultimately results in the relative enrichment of an extra domain B (EDB) exon-containing FN isoform with the suggestion that FN isoforms may play a functional role in chondrogenesis. Promotion of chondrogenesis can also be achieved by treatment with transforming growth factor-β (TGF-β), which also regulates FN isoform expression. We have examined the effects of TGF-β treatment on the assumption of the chondrogenic phenotype in the teratoma-derived cell line ATDC5 and tested whether these effects on chondrogenesis are paralleled by appropriate changes in FN isoform expression. ATDC5 cells were maintained in a pre-chondrogenic state and, in this state, treated with 10 ng/ml TGF-β. The cells started to elaborate a matrix rich insulfated proteoglycans, such that within the first 12 days of culture, TGF-β1 treatment appeared to slightly accelerate early acquisition of an Alcian blue-stained matrix, and caused a dose- and time-dependent decrease in collagen type I expression; changes in collagen type II expression were variable. At later times, cells treated with TGF-β became indistinguishable from those of the controls. Interestingly, TGF-β treatment caused a significant dose- and time-dependent decrease in the proportion of FN containing the extra domain A (EDA) and the EDB exons. These data suggest that TGF-β induces the early stages of chondrogenic maturation in this pre-chondrogenic line and that TGF-β treatment increases expression of FN isoforms that lack the EDA and EDB exons.

Original languageAmerican English
JournalJournal of Cellular Biochemistry
Volume95
StatePublished - Jan 1 2005

Keywords

  • Alcian blue
  • Alternative splicing
  • Collagen type I
  • Collagen type II
  • Fibronectin
  • TGF-β1
  • collagen type 1
  • collagen type 2
  • isoprotein
  • proteoglycan
  • proteoglycan sulfate
  • transforming growth factor beta1
  • unclassified drug
  • messenger RNA
  • sulfate
  • Tgfb1 protein
  • mouse
  • transforming growth factor beta
  • animal cell
  • article
  • cartilage cell
  • cell differentiation
  • cell fate
  • chondrogenesis
  • controlled study
  • cytokine production
  • dose time effect relation
  • exon
  • mesenchyme
  • nonhuman
  • phenotype
  • priority journal
  • protein expression
  • proteoglycan synthesis
  • staining
  • teratoma
  • alternative RNA splicing
  • animal
  • cell proliferation
  • chemistry
  • drug effect
  • gene expression regulation
  • genetics
  • metabolism
  • time
  • tumor cell line
  • Animalia
  • Animals
  • Cell Line
  • Tumor
  • Exons
  • Fibronectins
  • Mice
  • Protein Isoforms
  • Proteoglycans
  • RNA
  • Messenger
  • Sulfates
  • Time Factors

Disciplines

  • Life Sciences

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